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This book describes the combined efforts by experimental material scientists, computational scientists, and advanced measurement scientists to understand the structure and processes at solid–liquid and solid–solid interfaces. That cooperation led to the development of efficient energy-conversion processes and devices in solar energy-based systems such as secondary batteries, solar cells, and fuel cells. The development was the result of 10 years of research in the Global Research Center for Environment and Energy based on Nanomaterials Science (GREEN) in the National Institute for Materials Science (NIMS), Japan. The cooperating scientists’ work was supported by the Ministry of Education, Culture, Sports, Science and Technology (MEXT) project “Development of Environmental Technology Using Nanotechnology”.
This book describes the combined efforts by experimental material scientists, computational scientists, and advanced measurement scientists to understand the structure and processes at solid–liquid and solid–solid interfaces. That cooperation led to the development of efficient energy-conversion processes and devices in solar energy-based systems such as secondary batteries, solar cells, and fuel cells. The development was the result of 10 years of research in the Global Research Center for Environment and Energy based on Nanomaterials Science (GREEN) in the National Institute for Materials Science (NIMS), Japan. The cooperating scientists’ work was supported by the Ministry of Education, Culture, Sports, Science and Technology (MEXT) project “Development of Environmental Technology Using Nanotechnology”.
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